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Optimal Position-Based Warehouse Ordering in Divergent Two-Echelon Inventory Systems

机译:二级和二级库存系统中基于位置的最优仓库订购

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A continuous-review two-echelon inventory system with one central warehouse and a number of nonidentical retailers is considered. The retailers face independent Poisson demand and apply standard (R, Q) policies. The retailer order quantities are fixed integer multiples of a certain batch size, representing the smallest pallet or container size transported in the system. A warehouse order may consist of one or several such batches. We derive a new policy for warehouse ordering, which is optimal in the broad class of position-based policies relying on complete information about the retailer inventory positions, transportation times, cost structures, and demand distributions at all facilities. The exact analysis of the new policy includes a method for determining the expected total inventory holding and backorder costs for the entire system. The class of position-based policies encompasses both the traditional installation-stock and echelon-stock (R, Q) policies, as well as the more sophisticated policies recently analyzed in the literature. The value of more carefully incorporating a richer information structure into the warehouse ordering policy is illustrated in a numerical study.
机译:考虑具有两个中央仓库和多个不相同零售商的连续审查两级库存系统。零售商面对独立的泊松需求,并应用标准(R,Q)策略。零售商的订购数量是某个批次大小的固定整数倍,代表系统中运输的最小托盘或容器大小。仓库订单可能包含一个或几个这样的批次。我们推导出了一项新的仓库订购政策,该政策在各种基于位置的策略中是最佳选择,它依赖于零售商库存位置,运输时间,成本结构和所有设施的需求分配的完整信息。对新政策的精确分析包括一种确定整个系统的预期总库存持有量和缺货成本的方法。基于位置的策略包括传统的安装库存和梯队库存(R,Q)策略,以及最近在文献中分析的更复杂的策略。数值研究表明了更谨慎地将更丰富的信息结构纳入仓库订购策略的价值。

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